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Minimization and control of battery energy storage for wind power smoothing: Aggregated, distributed and semi-distributed storage

机译:最小化和控制电池能量存储以进行风能平滑:聚合,分布式和半分布式存储

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A battery energy storage system (BESS) is usually integrated with a wind farm to smooth out its intermittent power in order to make it more dispatchable. This paper focuses on the development of a scheme to minimize the capacity of BESS in a distributed configuration using model predictive control theory and wind power prediction. The purpose to minimize the BESS capacity is to reduce the overall cost of the system as the capacity of BESS is the main cost driver. A new semi-distributed BESS scheme is proposed and the strategy is analyzed as a way of improving the suppression of the fluctuations in the wind farm power output. The scheme is tested for similar and dissimilar wind power profiles, where the turbines are geographically located closer and further from each other, respectively. These two power profiles are assessed under a variety of hard system constraints for both the proposed and conventional BESS configurations. Based on the simulation results validated with real-world wind farm data, it has been observed that the proposed semi-distributed BESS scheme results in the improved performance as compared with conventional configurations such as aggregated and distributed storage.
机译:电池储能系统(BESS)通常与风电场集成在一起,以消除其间歇性功率,从而使其更易于调度。本文着重于开发一种使用模型预测控制理论和风电功率预测来最小化分布式配置中BESS容量的方案。最小化BESS容量的目的是降低系统的总体成本,因为BESS的容量是主要的成本驱动因素。提出了一种新的半分布式BESS方案,并对该策略进行了分析,作为改善风电场发电量波动抑制的一种方法。该方案针对相似和不相似的风能曲线进行了测试,其中涡轮分别在地理位置上彼此靠近且相距较远。针对建议的BESS配置和常规的BESS配置,在各种硬系统约束下评估了这两个功率曲线。基于真实世界的风电场数据验证的仿真结果,已经观察到,与诸如聚合和分布式存储的常规配置相比,拟议的半分布式BESS方案可提高性能。

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